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- W3209336002 abstract "This study attempts to explore the impacts of atmospheric stability on characterising the seasonal and spatial patterns of the nocturnal surface ( sUHI ) and canopy air ( aUHI ) heat islands in Oklahoma City (OKC), US. The urban meteorological network in OKC provides a unique opportunity to evaluate the impact of stability on UHI due to the routine collection of data at two heights. This enables the calculation of the gradient Richardson number ( Ri ), the utility of which can then be used to enhance approaches which use the more commonly used Pasquill-Gifford method for the calculation of atmospheric stability. Although, good correlations were generally found between the P-G scheme and the Ri , the more simplistic P-G scheme elicited a stronger relationship with UHI intensity ( UHII ). More specifically, it was found that the increased aUHI under more stable conditions highlighted the more superior controls of the atmospheric stability on the development of aUHI during both summer and transition seasons, comparing to the sUHI that is less affected by the atmospheric stability particularly during transition seasons. Overall, these findings have implications for the design of future studies as it highlights that the measurement of windspeed and temperature at a single height is sufficient to characterise atmospheric stability in UHI studies. • Superior controls of the atmospheric stability on the development of a UHI comparing to the s UHI . • s UHI that is less affected by the atmospheric stability particularly during transition seasons. • The measurement of windspeed at a single height is sufficient to characterise atmospheric stability in UHI studies." @default.
- W3209336002 created "2021-11-08" @default.
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- W3209336002 date "2021-12-01" @default.
- W3209336002 modified "2023-09-30" @default.
- W3209336002 title "Characterising the nocturnal surface and canopy heat islands in Oklahoma City, USA according to the atmospheric stability" @default.
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- W3209336002 doi "https://doi.org/10.1016/j.uclim.2021.101008" @default.
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